Screened track socket with new wiring structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- MORDIO ELECTRICAL CO LTD
- Filing Date
- 2026-04-07
- Publication Date
- 2026-05-26
AI Technical Summary
The limited wiring space in commercially available track sockets makes wiring inconvenient and prone to confusion, affecting the normal use and safety of the sockets.
Design a track socket with a screen. The wiring part is located on the side of the display mounting base near the track body. The wiring groove is connected to the mounting cavity. External wires enter the mounting cavity through the wiring groove and are electrically connected to the conductive components. The groove cover is sealed to prevent dust. The conductive components include N-pole, L-pole, and E-pole terminals. The circuit board components are partitioned to achieve a compact and reasonable circuit layout.
It improves the convenience and efficiency of wiring, reduces line resistance loss, lowers the possibility of line interference, enhances the stability and reliability of the socket, and ensures the safety of wiring and ease of maintenance.
Smart Images

Figure CN224288816U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of switch and socket technology, specifically to a screened track socket with a novel wiring structure. Background Technology
[0002] Track sockets, as a new type of socket product, mainly consist of a power rail (also known as an electrical track) and an adapter. The power rail is mounted on a wall or desktop via its backplate. The adapter is plugged into the power rail and can move left and right along it; the number of adapters can be increased or decreased according to user needs. Therefore, track sockets are widely popular in the market due to their flexibility. Currently, track sockets with screens typically have limited internal wiring space, making wire connection inconvenient and prone to problems such as messy wiring and poor contact, affecting the normal use and safety of the socket. Utility Model Content
[0003] In view of this, the present invention provides a screened track socket with a novel wiring structure.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a screen-mounted rail socket with a novel wiring structure, comprising a rail body and a display screen mounting base disposed on one side of the rail body. The display screen mounting base has a screen mounting portion for mounting the display screen and a wiring portion disposed on the side of the display screen mounting portion near the rail body for conducting external wires and the rail body.
[0005] Preferably, the display screen mounting base includes a base body and a lower cover, forming a mounting cavity between the base body and the lower cover. A circuit board assembly and a conductive assembly are disposed in the mounting cavity. The circuit board assembly and the conductive assembly are respectively disposed in the portions of the mounting cavity corresponding to the display screen mounting part and the wiring part. A wiring groove corresponding to the wiring part is formed on the lower cover. The wiring groove communicates with the mounting cavity, and external wires enter the mounting cavity through the wiring groove and are electrically connected to the conductive assembly.
[0006] Preferably, a slot cover is provided in the wiring slot to seal the wiring slot. The base body protrudes towards the slot cover to form a slot cover positioning post. A first positioning hole is provided on the positioning end of the slot cover, and a second positioning hole is provided on the lower cover. A slot cover connecting hole corresponding to the first positioning hole and the second positioning hole is provided on the slot cover. Fasteners are provided between the slot cover, the base body, and the lower cover. The fasteners pass through the corresponding slot cover connecting hole and extend into the first positioning hole and the second positioning hole to connect and fix the slot cover to the base body and the lower cover.
[0007] Preferably, the conductive component includes an N-pole terminal, an L-pole terminal, and an E-pole terminal, as well as an L-pole conductive sheet and an N-pole conductive sheet. The circuit board assembly includes a main circuit board and a secondary circuit board. The two ends of the L-pole conductive sheet are electrically connected to the main circuit board and the track body, respectively. The two ends of the N-pole conductive sheet are electrically connected to the secondary circuit board and the track body, respectively. A first energizing connecting piece is provided between the main circuit board and the L-pole terminal, and the main circuit board is electrically connected to the L-pole terminal through the first energizing connecting piece. A second energizing connecting piece is provided between the secondary circuit board and the N-pole terminal, and the secondary circuit board is electrically connected to the N-pole terminal through the second energizing connecting piece.
[0008] Preferably, corresponding power connection holes are provided on both the main circuit board and the sub-circuit board, and the L-polar conductive sheet, the first power connection sheet, the N-polar conductive sheet, and the second power connection sheet extend into the corresponding power connection holes and are electrically connected to the main circuit board / sub-circuit board.
[0009] Preferably, the secondary circuit board is equipped with a light strip adjustment switch, a track control switch, and a light strip sensing element.
[0010] Preferably, the inner wall of the base is provided with a positioning structure for fixing the conductive components and a support structure for supporting the circuit board assembly.
[0011] Preferably, the base has a display mounting surface, and the display mounting surface is partially recessed to form a display mounting groove. A display screen is disposed in the display mounting groove, and the display mounting groove is interconnected with the mounting cavity. The display screen is electrically connected to the circuit board assembly in the mounting cavity.
[0012] The beneficial effects of this utility model are as follows: By placing the wiring section on the side of the display screen mounting base closer to the track body, the wiring section is closer to the center of the track socket after installation, compared to the wiring socket on traditional track sockets. This structural layout provides more operating space during wiring, avoiding wiring difficulties caused by limited operating space, and improving wiring efficiency and convenience. Furthermore, the internal wiring connections of the entire track socket are more compact and rational. On the one hand, it effectively reduces the length of external wires running inside the track socket, lowers line resistance, and thus reduces power loss during transmission, improving the power efficiency of the track socket. On the other hand, the compact wiring layout also reduces the possibility of mutual interference between lines, improving the stability and reliability of the track socket. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0014] Figure 1 is a schematic diagram of the structure of this utility model;
[0015] Figure 2 is a schematic diagram of Figure 1 from another angle;
[0016] Figure 3 is an exploded view of the structure of this utility model;
[0017] Figure 4 is a schematic diagram of Figure 3 from another angle;
[0018] Figure 5 is a schematic diagram of the track socket without the slot cover;
[0019] Figure 6 is an enlarged view of section A in Figure 3. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] The present invention will now be further described with reference to the accompanying drawings.
[0022] This utility model provides the following technical solution: As shown in Figures 1-6, this utility model discloses a screen-mounted rail socket with a novel wiring structure, including a rail body 1 and a display screen mounting base 2 disposed on one side of the rail body 1. The display screen mounting base 2 has a display screen mounting part 4 for mounting a display screen 3 and a wiring part 5 disposed on the side of the display screen 3 mounting part near the rail body 1 for conducting external wires and the rail body 1. Specifically, in this design, by placing the wiring part 5 on the side of the display screen mounting base 2 near the rail body 1, after the display screen mounting base 2 is installed, the wiring part 5 is closer to the center of the rail socket than the wiring socket on a traditional rail socket. This structural layout allows for a larger operating space during wiring, avoiding wiring difficulties caused by limited operating space, and improving wiring efficiency and convenience. Moreover, the internal wiring connection of the entire rail socket is more compact and reasonable. On the one hand, it can effectively reduce the length of external wires inside the rail socket, reduce line resistance, thereby reducing power loss during transmission and improving the power efficiency of the rail socket. On the other hand, the compact wiring layout also reduces the possibility of mutual interference between lines, improving the stability and reliability of the track socket.
[0023] Furthermore, the display screen mounting base 2 includes a base body 6 and a lower cover 7, forming a mounting cavity 8 between the base body 6 and the lower cover 7. A circuit board assembly 9 and a conductive component 10 are disposed within the mounting cavity 8. The circuit board assembly 9 and the conductive component 10 are respectively disposed within the portions of the mounting cavity 8 corresponding to the display screen mounting part 4 and the wiring part 5. A wiring groove 11 corresponding to the position of the wiring part 5 is formed on the lower cover 7. The wiring groove 11 communicates with the mounting cavity 8, and external wires enter the mounting cavity 8 through the wiring groove 11 to electrically connect with the conductive component 10. Specifically, in this embodiment, the design of the base body 6 and the lower cover 7 facilitates the installation, maintenance, and repair of the circuit board assembly 9 and the conductive component 10 within the mounting cavity 8. When it is necessary to adjust the wiring or replace internal components, it is only necessary to open the lower cover 7 to operate, greatly improving the convenience of subsequent maintenance. Meanwhile, the precise positioning of the wiring groove 11 corresponds to the wiring section 5, allowing external wires to accurately enter the mounting cavity 8 and connect to the conductive component 10. This avoids problems such as bending and tangling of wires during installation, further ensuring the stability and reliability of the wiring. Furthermore, the circuit board assembly 9 and the conductive component 10 are respectively located within the sections of the mounting cavity 8 corresponding to the display mounting section 4 and the wiring section 5. This partitioned arrangement allows components with different functions to work independently yet collaboratively. The circuit board assembly 9 is responsible for the control and signal processing functions of the display screen 3, while the conductive component 10 focuses on ensuring the continuity between the external wires and the track body 1. The two do not interfere with each other, improving the overall performance of the track socket. Moreover, this layout also facilitates heat dissipation, reducing the impact of heat generated by concentrated components on the performance of the track socket and extending its service life.
[0024] Furthermore, a cover 12 is provided inside the wiring groove 11 to seal the wiring groove 11. The base 6 protrudes towards the cover 12 to form a cover positioning post 13. A first positioning hole 14 is provided on the positioning end of the cover 12, and a second positioning hole 15 is provided on the lower cover 7. A cover connecting hole 16 corresponding to the first positioning hole 14 and the second positioning hole 15 is provided on the cover 12. Fasteners are provided between the cover 12, the base 6, and the lower cover 7. The fasteners pass through the corresponding cover connecting hole 16 and extend into the first positioning hole 14 and the second positioning hole 15 to connect and fix the cover 12 to the base 6 and the lower cover 7. Specifically, in this embodiment, the cover 12 is provided to seal the wiring groove 11 to prevent dust, debris, etc. from entering the wiring groove 11, avoiding their impact on the wiring and ensuring the safety and stability of the wiring. The mating design of the slot cover positioning post 13 and the first positioning hole 14 provides precise positioning for the installation of the slot cover 12, enabling the slot cover 12 to be accurately installed on the wiring slot 11. Simultaneously, fasteners passing through the slot cover connecting hole 16 and extending into the first positioning hole 14 and the second positioning hole 15 securely connect the slot cover 12 to the base 6 and the lower cover 7, ensuring the secure installation of the slot cover 12 and preventing it from loosening or falling off during daily use.
[0025] Furthermore, the conductive component 10 includes an N-pole terminal 17, an L-pole terminal 18, and an E-pole terminal 19, as well as an L-pole conductive sheet 20 and an N-pole conductive sheet 21. The circuit board assembly 9 includes a main circuit board 22 and a secondary circuit board 23. The two ends of the L-pole conductive sheet 20 are electrically connected to the main circuit board 22 and the track body 1, respectively. The two ends of the N-pole conductive sheet 21 are electrically connected to the secondary circuit board 23 and the track body 1, respectively. A first energizing connecting piece 30 is provided between the main circuit board 22 and the L-pole terminal 18, and the main circuit board 22 is electrically connected to the L-pole terminal 18 through the first energizing connecting piece 30. A second energizing connecting piece 31 is provided between the secondary circuit board 23 and the N-pole terminal 17, and the secondary circuit board 23 is electrically connected to the N-pole terminal 17 through the second energizing connecting piece 31. Specifically, in this embodiment, the design of the N-pole terminal 17, L-pole terminal 18, and E-pole terminal 19 ensures that the track socket can safely and stably achieve multi-channel conductivity. The connection between the L-pole conductive piece 20 and the main circuit board 22 not only ensures efficient current transmission but also reduces contact resistance through optimized structural design, further improving power efficiency. Simultaneously, the cooperation between the N-pole conductive piece 21 and the secondary circuit board 23 makes the functional allocation of the entire circuit system more rational, avoiding localized overheating problems caused by excessive current or uneven distribution. Furthermore, the introduction of the first energizing connector 30 and the second energizing connector 31 simplifies the connection method between the circuit board and the terminals, reduces the complexity of installation and maintenance, and also enhances the reliability and durability of the connection.
[0026] The E-terminal 19 has a grounding copper plate 34 protruding towards the track body 1. The grounding copper plate 34 extends into the track body 1 and forms a stable grounding connection with it. This design effectively improves the safety performance of the track socket, ensuring that static electricity or fault current can be promptly conducted to the ground during use, preventing damage to equipment and users. The protruding structure of the grounding copper plate 34 not only increases the contact area with the track body 1 but also reduces the grounding resistance through a tight fit, thereby further improving the grounding effect.
[0027] Furthermore, both the main circuit board 22 and the sub-circuit board 23 have corresponding power connection holes 32. The L-polar conductive sheet 20 and the first power connection sheet 30, as well as the N-polar conductive sheet 21 and the second power connection sheet 31, extend into the corresponding power connection holes 32 to electrically connect with the main circuit board 22 / sub-circuit board 23. Specifically, in this embodiment, the design of the power connection holes 32 on the main circuit board 22 and the sub-circuit board 23 ensures that the L-polar conductive sheet 20 and the first power connection sheet 30, and the N-polar conductive sheet 21 and the second power connection sheet 31, can be securely inserted and reliably electrically connected. This design not only simplifies the assembly process but also effectively reduces the risk of circuit failure due to poor contact. The size of the power connection hole 32 matches the specifications of the conductive sheet and the connection sheet, thereby ensuring the tightness of the connection and the stability of the conductivity.
[0028] Furthermore, a light strip adjustment switch 24, a track control switch 25, and a light strip sensing element 33 are provided on the sub-circuit board and electrically connected to them. Specifically, in this embodiment, the base 6 has through holes corresponding to the light strip adjustment switch 24, the track control switch 25, and the light strip sensing element 33. The light strip sensing element 33 includes a photosensitive element and a radar sensing element. A light-transmitting element is provided in the through hole corresponding to the light strip sensing element 33. The photosensitive element in the light strip sensing element 33 can automatically adjust the brightness of the light strip according to the change of ambient light, thereby achieving the effect of energy saving and environmental protection. The radar sensing element triggers the opening or closing of the light strip by detecting human activity, further enhancing the intelligence level of the product. The setting of the light-transmitting element not only protects the light strip sensing element 33 from dust and moisture, but also ensures the efficient transmission of sensing signals, making the sensing function more sensitive and reliable. The track control switch 25 has two states: long press and short press. A short press toggles the on / off state of the track relay, while a long press restarts the track control panel (including the screen). Precise control of the track sockets can be achieved through simple button operation. The short press function quickly switches the on / off state of the track relay to meet immediate needs in daily use; while the long press function provides a restart option, allowing users to quickly restore the track in case of abnormal situations without additional tools or complicated procedures. The LED strip adjustment switch 24 has the following states: a short press toggles the LED strip's brightness: constantly on (flashes once), constantly off (no light), and sensor-activated (flashes twice); a long press toggles the LED strip's brightness (the brightness level can be set according to needs).
[0029] Furthermore, the inner wall of the base 6 is provided with a positioning structure 26 for fixing the conductive component 10 and a support structure 27 for supporting the circuit board assembly 9. Specifically, in this embodiment, the positioning structure 26 consists of several protruding ribs formed on the inner wall of the base 6, with positioning grooves formed between adjacent ribs. The conductive component 10 is fixed in the corresponding positioning groove, limiting its position within the mounting cavity 8. The support structure 27 consists of several supporting pillars protruding on the inner wall of the base 6. The circuit board assembly 9 is placed on the supporting pillars, ensuring that the circuit board assembly 9 is stably positioned within the mounting cavity 8. By fixing the conductive component 10 with the positioning structure 26, it is possible to prevent the conductive component 10 from shaking or shifting within the mounting cavity 8, avoiding any impact on the stability of the circuit connection due to changes in the position of the conductive component 10, and further ensuring the electrical safety of the track socket.
[0030] Furthermore, the base 6 has a screen mounting surface 28, on which a screen mounting groove 29 is formed by a partial recess. A display screen 3 is disposed within the screen mounting groove 29. The screen mounting groove 29 is interconnected with the mounting cavity 8, and the display screen 3 is electrically connected to the circuit board assembly 9 within the mounting cavity 8. Specifically, in this embodiment, the screen mounting groove 29 formed by the recess on the mounting surface of the display screen 3 provides a position for the installation of the display screen 3. The display screen 3 is embedded within the screen mounting groove 29, and a through hole communicating with the mounting cavity 8 is formed on the inner wall of the screen mounting groove 29. The display screen 3 is electrically connected to the main circuit board 22 within the mounting cavity 8 via a wire. One end of the wire is connected to the display screen 3, and the other end extends into the mounting cavity 8 through the through hole and connects to the main circuit board 22. This connection method ensures that the display screen 3 can stably receive signals and power from the main circuit board 22, thereby realizing various display functions.
[0031] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A track socket with a new wiring structure, comprising a track body and a display mounting seat arranged on one side of the track body, characterized in that: The display screen mounting base has a display screen mounting part for mounting the display screen and a wiring part located on the side of the display screen mounting part near the track body for conducting external wires and the track body.
2. The screened track socket with a novel wiring structure according to claim 1, characterized in that: The display screen mounting base includes a base body and a lower cover, forming a mounting cavity between the base body and the lower cover. A circuit board assembly and a conductive assembly are disposed in the mounting cavity. The circuit board assembly and the conductive assembly are respectively disposed in the parts of the mounting cavity corresponding to the display screen mounting part and the wiring part. A wiring groove is opened on the lower cover at the position corresponding to the wiring part. The wiring groove is connected to the mounting cavity, and external wires enter the mounting cavity through the wiring groove and are electrically connected to the conductive assembly.
3. The screened track socket with a novel wiring structure according to claim 2, characterized in that: A slot cover is provided inside the wiring slot to seal the wiring slot. The base body protrudes towards the slot cover to form a slot cover positioning post. A first positioning hole is opened on the positioning end of the slot cover, and a second positioning hole is opened on the lower cover. A slot cover connecting hole corresponding to the first positioning hole and the second positioning hole is opened on the slot cover. Fasteners are provided between the slot cover, the base body, and the lower cover. The fasteners pass through the corresponding slot cover connecting hole and extend into the first positioning hole and the second positioning hole to connect and fix the slot cover to the base body and the lower cover.
4. The screened track socket with a novel wiring structure according to claim 2, characterized in that: The conductive component includes an N-pole terminal, an L-pole terminal, and an E-pole terminal, as well as an L-pole conductive sheet and an N-pole conductive sheet. The circuit board assembly includes a main circuit board and a secondary circuit board. The two ends of the L-pole conductive sheet are electrically connected to the main circuit board and the track body, respectively. The two ends of the N-pole conductive sheet are electrically connected to the secondary circuit board and the track body, respectively. A first energized connecting piece is provided between the main circuit board and the L-pole terminal, and the main circuit board is electrically connected to the L-pole terminal through the first energized connecting piece. A second energized connecting piece is provided between the secondary circuit board and the N-pole terminal, and the sub-circuit board is electrically connected to the N-pole terminal through the second energized connecting piece.
5. The screened track socket with a novel wiring structure according to claim 4, characterized in that: Both the main circuit board and the sub-circuit board have corresponding power connection holes. The L-polar conductive sheet, the first power connection sheet, the N-polar conductive sheet, and the second power connection sheet extend into the corresponding power connection holes and are electrically connected to the main circuit board / sub-circuit board.
6. The screened track socket with a novel wiring structure according to claim 4, characterized in that: The sub-circuit board is equipped with a light strip adjustment switch, a track control switch, and a light strip sensing element.
7. The screened track socket with a novel wiring structure according to claim 2, characterized in that: The inner wall of the base is provided with a positioning structure for fixing the conductive components and a support structure for supporting the circuit board assembly.
8. The screened track socket with a novel wiring structure according to claim 2, characterized in that: The base has a display mounting surface, and a display mounting groove is formed by a partial recess on the display mounting surface. A display screen is installed in the display mounting groove. The display mounting groove and the mounting cavity are interconnected. The display screen is electrically connected to the circuit board assembly in the mounting cavity.